bioRxiv · 10.1101/2023.01.17.524395
Light and temperature regulate m6A-RNA modification to regulate growth in plants
Abstract
N6-methyladenosine is a highly dynamic, abundant mRNA modification which is an excellent potential mechanism for fine tuning gene expression. Plants adapt to their surrounding light and temperature environment using complex gene regulatory networks. The role of m6A in controlling gene expression in response to variable environmental conditions has so far been unexplored. Here, we map the transcriptome-wide m6A landscape under various light and temperature environments. Identified m6A-modifications show a highly specific spatial distribution along transcripts with enrichment occurring in 5UTR regions and around transcriptional end sites. We show that the position of m6A modifications on transcripts might influence cellular transcript localization and the presence of m6A-modifications is associated with alternative polyadenylation, a process which results in multiple RNA isoforms with varying 3UTR lengths. RNA with m6A-modifications exhibit a higher preference for shorter 3UTRs. These shorter 3UTR regions might directly influence transcript abundance and localization by including or excluding cis-regulatory elements. We propose that environmental stimuli might change the m6A landscape of plants as one possible way of fine tuning gene regulation through alternative polyadenylation and transcript localization.
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Artz, O., Ackermann, A., Taylor, L. J., Koo, P., Pedmale, U. V.. 2023-01-17. Light and temperature regulate m6A-RNA modification to regulate growth in plants. https://doi.org/10.1101/2023.01.17.524395
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